743844-015.pdf - 第48页

For more information on the Intel ® T urbo Boost Max 3.0 T echnology , refer to http:// www .intel.com/content/www/us/en/architecture-and-technology/turbo-boost/turbo- boost-max -technology .html NOTE Intel ® T urbo Boos…

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NOTES
1. L1 Data cache (DCU) - 48KB (P-core) - 32KB (E-Core)
2. L1 Instruction cache (IFU) - 32KB (P-Core) - 64KB (E-Core)
3. MLC - Mid Level Cache - 2MB (P-Core) - 4MB (shared by 4 E-Cores)
Ring Interconnect
The Ring is a high speed, wide interconnect that links the processor cores, processor
graphics and the System Agent.
The Ring shares frequency and voltage with the Last Level Cache (LLC).
The Ring's frequency dynamically changes. Its frequency is relative to both processor
cores and processor graphics frequencies.
Intel
®
Performance Hybrid Architecture
The processor contains two types of cores, denoted as P-Cores and E-Cores (P core is
a Performance core and E core is efficient core ).
The P-Cores and E-Cores share the same instruction set.
The available instruction sets, when hybrid computing is enabled, is limited compared
to the instruction sets available to P-Cores.
P core and E core frequency's will be determined by the processor algorithmic, to
maximize performance and power optimization.
For more details, refer to: https://www.intel.com/content/www/us/en/developer/
articles/technical/hybrid-architecture.html
NOTE
Hybrid Computing may not be available on all SKUs.
Intel
®
Turbo Boost Max Technology 3.0
The Intel
®
Turbo Boost Max Technology 3.0 (ITBMT 3.0) grants a different maximum
Turbo frequency for individual processor cores.
To enable ITBMT 3.0 the processor exposes individual core capabilities; including
diverse maximum turbo frequencies.
An operating system that allows for varied per core frequency capability can then
maximize power savings and performance usage by assigning tasks to the faster
cores, especially on low core count workloads.
Processors enabled with these capabilities can also allow software (most commonly a
driver) to override the maximum per-core Turbo frequency limit and notify the
operating system via an interrupt mechanism.
2.4.3
2.4.4
2.4.5
R
Technologies—Intel
®
Core
, Xeon
6300 And Xeon
E 2400 Processors
13
th
Generation Intel
®
Core
, Intel
®
Core
14
th
Generation, Intel
®
Core
Processor (Series 1) and (Series 2), Intel
®
Xeon
E
2400 Processor and Intel
®
Xeon
6300 Processor
May 2025 Datasheet, Volume 1 of 2
Doc. No.: 743844, Rev.: 015 47
For more information on the Intel
®
Turbo Boost Max 3.0 Technology, refer to http://
www.intel.com/content/www/us/en/architecture-and-technology/turbo-boost/turbo-
boost-max-technology.html
NOTE
Intel
®
Turbo Boost Max 3.0 Technology may not be available on all SKUs.
Power Aware Interrupt Routing (PAIR)
The processor includes enhanced power-performance technology that routes interrupts
to threads or processor IA cores based on their sleep states. As an example, for
energy savings, it routes the interrupt to the active processor IA cores without waking
the deep idle processor IA cores. For performance, it routes the interrupt to the idle
(C1) processor IA cores without interrupting the already heavily loaded processor IA
cores. This enhancement is most beneficial for high-interrupt scenarios like Gigabit
LAN, WLAN peripherals, etc.
Intel
®
Hyper-Threading Technology
The processor supports Intel
®
Hyper-Threading Technology (Intel
®
HT Technology)
that allows an execution processor IA core to function as two logical processors. While
some execution resources such as caches, execution units, and buses are shared,
each logical processor has its own architectural state with its own set of general-
purpose registers and control registers. This feature should be enabled using the BIOS
and requires operating system support.
Intel recommends enabling Intel
®
Hyper-Threading Technology with Microsoft*
Windows* 7 or newer and disabling Intel
®
Hyper-Threading Technology using the
BIOS for all previous versions of Windows* operating systems.
NOTE
Intel
®
HT Technology may not be available on all SKUs.
Intel
®
Turbo Boost Technology 2.0
The Intel
®
Turbo Boost Technology 2.0 allows the processor IA core/processor
graphics core to opportunistically and automatically run faster than the processor IA
core base frequency/processor graphics base frequency if it is operating below power,
temperature, and current limits. The Intel
®
Turbo Boost Technology 2.0 feature is
designed to increase the performance of both multi-threaded and single-threaded
workloads.
Compared with previous generation products, Intel
®
Turbo Boost Technology 2.0 will
increase the ratio of application power towards Processor Base Power (a.k.a TDP) and
also allows to increase power above Processor Base Power (a.k.a TDP) as high as PL2
for short periods of time. Thus, thermal solutions and platform cooling that are
designed to less than thermal design guidance might experience thermal and
performance issues since more applications will tend to run at the maximum power
limit for significant periods of time.
2.4.6
2.4.7
2.4.8
R
Intel
®
Core
, Xeon
6300 And Xeon
E 2400 Processors—Technologies
13
th
Generation Intel
®
Core
, Intel
®
Core
14
th
Generation, Intel
®
Core
Processor (Series 1) and (Series 2), Intel
®
Xeon
E
2400 Processor and Intel
®
Xeon
6300 Processor
Datasheet, Volume 1 of 2 May 2025
48 Doc. No.: 743844, Rev.: 015
NOTE
Intel
®
Turbo Boost Technology 2.0 may not be available on all SKUs.
Intel
®
Turbo Boost Technology 2.0 Frequency
To determine the highest performance frequency amongst active processor IA cores,
the processor takes the following into consideration:
The number of processor IA cores operating in the C0 state.
The estimated processor IA core current consumption and ICCMax settings.
The estimated package prior and present power consumption and turbo power
limits.
The package temperature.
Any of these factors can affect the maximum frequency for a given workload. If the
power, current, or thermal limit is reached, the processor will automatically reduce the
frequency to stay within its Processor Base Power (a.k.a TDP) limit. Turbo processor
frequencies are only active if the operating system is requesting the P0 state. For
more information on P-states and C-states, refer to Power Management on page 62.
Intel
®
Turbo Boost Technology 2.0 Power Control
Illustration of Intel
®
Turbo Boost Technology 2.0 power control is shown in the
following sections and figures. Multiple controls operate simultaneously allowing
customization for multiple systems thermal and power limitations. These controls
allow for turbo optimizations within system constraints and are accessible using MSR,
MMIO, and PECI interfaces.
Intel
®
Turbo Boost Technology 2.0 Power Monitoring
When operating in turbo mode, the processor monitors its own power and adjusts the
processor and graphics frequencies to maintain the average power within limits over a
thermally significant time period. The processor estimates the package power for all
components on the package. In the event that a workload causes the temperature to
exceed program temperature limits, the processor will protect itself using the Adaptive
Thermal Monitor.
Enhanced Intel SpeedStep
®
Technology
Enhanced Intel SpeedStep
®
Technology enables OS to control and select P-state. The
following are the key features of Enhanced Intel SpeedStep
®
Technology:
Multiple frequencies and voltage points for optimal performance and power
efficiency. These operating points are known as P-states.
Frequency selection is software controlled by writing to processor MSRs. The
voltage is optimized based on the selected frequency and the number of active
processors IA cores.
Once the voltage is established, the PLL locks on to the target frequency.
All active processor IA cores share the same frequency and voltage. In a
multi-core processor, the highest frequency P-state requested among all active
IA cores is selected.
2.4.8.1
2.4.8.2
2.4.8.3
2.4.9
R
Technologies—Intel
®
Core
, Xeon
6300 And Xeon
E 2400 Processors
13
th
Generation Intel
®
Core
, Intel
®
Core
14
th
Generation, Intel
®
Core
Processor (Series 1) and (Series 2), Intel
®
Xeon
E
2400 Processor and Intel
®
Xeon
6300 Processor
May 2025 Datasheet, Volume 1 of 2
Doc. No.: 743844, Rev.: 015 49